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直接紫外光降解水中除草剂三氯吡氧乙酸:机理研究。

Direct UV photodegradation of herbicide triclopyr in aqueous solutions: A mechanistic study.

机构信息

Novosibirsk State University, 630090, 2 Pirogova str, Novosibirsk, Russian Federation; Voevodsky Institute of Chemical Kinetics and Combustion SB RAS, 630090, 3 Institutskaya str, Novosibirsk, Russian Federation.

International Tomography Center SB RAS, 630090, 3a Institutskaya str, Novosibirsk, Russian Federation.

出版信息

Chemosphere. 2022 Apr;293:133573. doi: 10.1016/j.chemosphere.2022.133573. Epub 2022 Jan 8.

Abstract

Mechanism of direct UV photolysis of pyridine herbicide triclopyr (TRI) was revealed by the combination of nanosecond laser flash photolysis, steady-state photolysis coupled with high resolution LC-MS and DFT quantum-chemical calculations. Both the detection of short-lived intermediates and the detailed identification of final products were done for the first time. The quantum yield of TRI photodegradation is about 4% at both UVC (254 nm) and UVB (308 nm) excitation. The primary stage is the heterolytic cleavage of C-Cl bond in dissociative triplet state of TRI with the formation of phenyl cation followed by a fast nucleophilic attack by a solvent molecule. The minor channel is the photohydrolysis leading to the formation of 3,5,6-trichloropyridin-2-ol. Primary photoproducts undergo secondary photolysis by the mechanism similar to initial TRI with the formation of products of acetic group elimination, sequential substitution of chlorine atoms to hydroxyl groups and, finally, oxidation and opening of the pyridine ring. Obtained results can be important for understanding the fate of pyridine herbicides in the processes of UVC disinfection and in natural waters under action of the sunlight.

摘要

通过纳秒激光闪光光解、稳态光解与高分辨率 LC-MS 和 DFT 量子化学计算相结合,揭示了吡啶类除草剂三氯吡氧乙酸(TRI)的直接紫外光解机制。首次同时检测到了短寿命中间体,并对最终产物进行了详细鉴定。在 UVC(254nm)和 UVB(308nm)激发下,TRI 光降解的量子产率约为 4%。初级阶段是 TRI 的解离三重态中 C-Cl 键的异裂,形成苯阳离子,随后溶剂分子快速进行亲核攻击。次要途径是光水解,导致 3,5,6-三氯吡啶-2-醇的形成。主要光产物通过类似于初始 TRI 的机制进行二次光解,形成乙酸基消除、氯原子顺序取代羟基以及最终氧化和吡啶环开环的产物。获得的结果对于理解吡啶类除草剂在 UVC 消毒过程中的命运以及阳光作用下天然水中的命运非常重要。

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